Results for 'Industrial chemicals'

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  1. Workshop on postwar American high tech industry, Chemical Heritage Foundation, Philadelphia, 21-22 June 2007.Sean F. Johnston (ed.) - 2007
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  2.  6
    Chemical, ecological, other? Identifying weed management typologies within industrialized cropping systems in Georgia (U.S.).David Weisberger, Melissa Ann Ray, Nicholas T. Basinger & Jennifer Jo Thompson - forthcoming - Agriculture and Human Values:1-19.
    Since the introduction and widespread adoption of chemical herbicides, “weed management” has become almost synonymous with “herbicide management.” Over-reliance on herbicides and herbicide-resistant crops has given rise to herbicide resistant weeds. Integrated weed management (IWM) identifies three strategies for weed management— biological-cultural, chemical-technological, mechanical-physical—and recommends combining all three to mitigate herbicide resistance. However, adoption of IWM has stalled, and research to understand the adoption of IWM practices has focused on single stakeholder groups, especially farmers. In contrast, decisions about weed management (...)
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  3.  21
    The Industrialization of Invention: A Case Study from the German Chemical Industry.Georg Meyer-Thurow - 1982 - Isis 73 (3):363-381.
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  4.  3
    The Chemical Industries of the American Aborigines.C. Browne - 1935 - Isis 23:406-424.
  5.  3
    The Chemical Industries of the American Aborigines.C. A. Browne - 1935 - Isis 23 (2):406-424.
  6.  12
    Violence and the Chemicals Industry: Reframing Regulatory Obstructionism.Brett Aho - 2020 - Public Health Ethics 13 (1):50-61.
    When government actors seek to restrict the sale of hazardous substances, industry actors tend to intervene, deploying coordinated strategies aimed at delaying, preventing or weakening attempts to regulate their products. In many cases, this has involved deliberate efforts to obfuscate science, mislead the public and manipulate political actors in order to ensure desired policy outcomes. Strategies of regulatory obstructionism have resulted in the prolonged dispersal of harmful chemical substances with tangible impacts on public health. This article proposes that this behavior (...)
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  7.  17
    Can the Chemical Industry Repair the Erosion of Trust?Ken Sternberg - 1990 - Business Ethics: The Magazine of Corporate Responsibility 4 (4):12-13.
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  8.  13
    Mind the Gap: Formal Ethics Policies and Chemical Scientists’ Everyday Practices in Academia and Industry.Itai Vardi & Laurel Smith-Doerr - 2015 - Science, Technology, and Human Values 40 (2):176-198.
    Asymmetrical convergence is the increasing overlap between academic and industrial sectors, but with academia moving closer toward for-profit industrial norms than vice versa. Although this concept, developed by Kleinman and Vallas, is useful, processes of asymmetrical convergence in daily laboratory life are largely unexplored. Here, observations of three lab groups of chemical scientists in academic and industry contexts illustrate variation in interactions with ethics-related policies. Findings show more tension for academic science with business-based practices, such as the move (...)
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  9.  40
    Corporate Social Responsibility and Firm Productivity: Evidence from the Chemical Industry in the United States.Li Sun & Marty Stuebs - 2013 - Journal of Business Ethics 118 (2):251-263.
    Prior research suggests that participating in corporate social responsibility (CSR) activities can lead to higher future productivity. However, the empirical evidence is still scarce. The purpose of this study is to examine the relationship between CSR and future firm productivity in the U.S. chemical industry. Specifically, this study examines the relationship between CSR in year t and firm productivity in year (t + 1), (t + 2), and (t + 3). We use Data Envelopment Analysis, a non-parametric method, to measure (...)
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  10.  15
    The Earliest Chemical Industry. An Essay in the Historical Relations of Economics & Technology Illustrated from the Alum TradeCharles Singer.George Sarton - 1950 - Isis 41 (1):128-131.
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  11.  17
    Can the Chemical Industry Repair the Erosion of Trust?Ken Sternberg - 1990 - Business Ethics 4 (4):12-13.
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  12.  7
    Exploring the Classification and Restructuring of Chemical Industrial Cities in China: The Perspectives of Sectoral and Spatial Differences.Hui Zou, Xuejun Duan, Lei Wang & Tingting Jin - 2021 - Complexity 2021:1-19.
    As an economic pillar, major resource consumer, and polluter of cities, the chemical industry determines many cities’ transformation, prosperity, and decay. It is thus a major concern for achieving the UN Sustainable Development Goals. In China, which is at the stage of accelerated industrialization that is varied across regions, the chemical industry has gradually retreated from developed cities, such as Beijing and Shanghai, in the eastern region, and has become the inevitable choice for industrialization of less-developed cities, such as Xi’an, (...)
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  13.  23
    The International Diffusion of ISO 14001 in the Chemical Industry.Magali A. Delmas & Ivan Montiel - 2005 - Proceedings of the International Association for Business and Society 16:200-204.
    This paper investigates the determinants of the diffusion of the international environmental management system standard ISO 14001 within the chemical industry using a panel of 126 different countries during the period 2000 to 2003. We investigate how institutional pressure originating from different stakeholders such as governments, businesses, and the civil society and forces related to trade will drive the diffusion. Our results show that the level of community involvement within a particular country and the previous experience of businesses with voluntary (...)
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  14.  22
    The International Diffusion of ISO 14001 in the Chemical Industry.Ivan Montiel - 2005 - Proceedings of the International Association for Business and Society 16:200-204.
    This paper investigates the determinants of the diffusion of the international environmental management system standard ISO 14001 within the chemical industry using a panel of 126 different countries during the period 2000 to 2003. We investigate how institutional pressure originating from different stakeholders such as governments, businesses, and the civil society and forces related to trade will drive the diffusion. Our results show that the level of community involvement within a particular country and the previous experience of businesses with voluntary (...)
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  15.  14
    Chemical Industry Neptune's Gift: A History of Common Salt. By Robert P. Multhauf. Baltimore & London: Johns Hopkins University Press, 1978. Pp xviii + 325.£15.75. [REVIEW]Archie Clow - 1980 - British Journal for the History of Science 13 (3):266-267.
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  16.  13
    Introduction: Beyond the Production of Ignorance: The Pervasiveness of Industry Influence through the Tools of Chemical Regulation.Nathalie Jas, Marc-Olivier Déplaude, Sara Angeli Aguiton, Valentin Thomas & Emmanuel Henry - 2021 - Science, Technology, and Human Values 46 (5):911-924.
    Research on the influence of industry on chemical regulation has mostly been conducted within the framework of the production of ignorance. This special issue extends this research by looking at how industry asserts its interests––not just in the scientific sphere but also at other stages of policy-making and regulatory process––with a specific focus on the types of tools or instruments industry has used. Bringing together sociologists and historians specialized in Science and Technology Studies, the articles of the special issue study (...)
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  17.  20
    Ethical reasoning in business‐to‐business negotiations: evidence from relationships in the chemical industry in Germany.Dirk C. Moosmayer, Thomas Niemand & Florian U. Siems - 2016 - Business Ethics: A European Review 25 (2):128-143.
    This article explores managers’ ethical reasoning for behaviors in price negotiations using evidence from 15 in-depth interviews conducted with sales and purchasing representatives in the chemical industry in Germany. Applying transaction cost economics, we find that negotiators in commoditized market-like exchanges either refer to deontological norms such as not to lie, or they neglect a role for ethics, arguing that distributive negotiation is per se opportunistic. In contrast, exchanges of products with higher asset specificity lead to stronger informational integration which (...)
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  18.  13
    Measuring ecologically sound practice in the chemical industry.Michèle Friend - forthcoming - Foundations of Chemistry:1-11.
    I present a comparative and holistic method for qualitatively measuring sound ecological practice in chemistry. I consider chemicals developed and used by man from cradle to grave, that is, from the moment they are extracted from the earth, biomass, water or air, to their transportation, purification, mixing and elaboration in a factory, to their distribution by means of the market, to waste products both from the factory, packaging, transportations and by the consumer. I divide the locations of the ‘life’ (...)
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  19.  33
    Are conglomerates less environmentally responsible? An empirical examination of diversification strategy and subsidiary pollution in the U.s. Chemical industry.Robert S. Dooley & Gerald E. Fryxell - 1999 - Journal of Business Ethics 21 (1):1 - 14.
    This study examines the relationship between corporate diversification strategy and the pollution activity of subsidiaries within the U.S. chemical industry using TRI data (EPA's Toxic Release Inventory). The subsidiaries of conglomerates were found to exhibit higher pollution levels for direct emissions than those of firms pursuing more related diversification strategies. Additionally, the subsidiaries of conglomerates exhibited more variance in overall pollution emissions compared to related diversified firms.
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  20.  11
    American Chemical Industry. Volume 1, Background and Beginnings: 1608-1910 by Williams Haynes; American Chemical Industry. Volume 5, The Decade of New Products: 1930-1939. [REVIEW]Aaron Ihde - 1956 - Isis 47:430-431.
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  21.  18
    American Chemical Industry. Volume 1, Background and Beginnings: 1608-1910. Williams HaynesAmerican Chemical Industry. Volume 5, The Decade of New Products: 1930-1939. [REVIEW]Aaron J. Ihde - 1956 - Isis 47 (4):430-431.
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  22.  11
    The Chemical Industry during the Nineteenth Century. A Study of the Economic Aspects of Applied Chemistry in Europe and North America by L. F. Haber. [REVIEW]Aaron Ihde - 1959 - Isis 50:183-184.
  23.  15
    The Chemical Industry during the Nineteenth Century. A Study of the Economic Aspects of Applied Chemistry in Europe and North AmericaL. F. Haber. [REVIEW]Aaron Ihde - 1959 - Isis 50 (2):183-184.
  24.  5
    The Story of Chemical Industry in Basle.Paul Meier - 1960 - Isis 51 (4):579-580.
  25.  46
    Commercializing chemical warfare: citrus, cyanide, and an endless war.Adam M. Romero - 2016 - Agriculture and Human Values 33 (1):3-26.
    Astonishing changes have occurred to agricultural production systems since WWII. As such, many people tend to date the origins of industrial chemical agricultural to the early 1940s. The origins of industrial chemical agriculture, however, both on and off the field, have a much longer history. Indeed, industrial agriculture’s much discussed chemical dependency—in particular its need for toxic chemicals—and the development of the industries that feed this fix, have a long and diverse past that extend well back (...)
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  26.  20
    Archives of the British Chemical Industry, 1750-1914: A HandlistPeter J. T. Morris Colin A. Russell.Robert Bud - 1990 - Isis 81 (2):402-403.
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  27.  14
    What Do Unions and Employers Negotiate Under the Umbrella of Corporate Social Responsibility? Comparative Evidence from the Italian Metal and Chemical Industries.Sabrina Colombo, Marco Guerci & Toloue Miandar - 2019 - Journal of Business Ethics 155 (2):445-462.
    The corporate social responsibility and industrial relations studies have evolved mostly in parallel. In this paper, we integrate the IR with the CSR perspective, highlighting their similarities and differences. In particular, the study adopts a framework which includes a wide set of CSR-related issues to explore what unions and companies negotiate under the umbrella of CSR. It analyses and compares the national sectoral agreements of two key industries in the Italian economy, i.e. Metal and Chemical. We find that these (...)
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  28.  15
    Systematization of factors of economic efficiency of chemical industry enterprises.Olga Naumovna Mirkina - 2021 - Kant 38 (1):46-50.
    In a market economy, each industrial enterprise aims to increase the economic efficiency of its activities. The aim of the study is to systematize the factors of increasing the economic efficiency of industrial enterprises. There are many classifications of factors that affect the efficiency of the enterprise. On the example of enterprises of the chemical industry of the Smolensk region, factors were considered and a model was proposed to increase the economic efficiency of their activities.
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  29.  14
    A Finnish study of self-regulation discourses in the chemical industry's Responsible Care programme.Toivo Niskanen - 2011 - Business Ethics: A European Review 21 (1):77-99.
    The aim of the study was to explore the effects of the Responsible Care (RC) programme and how it is applied in practice. The present research questions include the following focus: how should we assess the performance of an organization's RC activity and what are the different criteria for assessing RC practices? The results indicate that the RC programme provides practical tools for developing health, environmental and safety operations. RC companies are committed to developing their products and processes, and continuously (...)
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  30.  7
    A Finnish study of self‐regulation discourses in the chemical industry's Responsible Care programme.Toivo Niskanen - 2012 - Business Ethics, the Environment and Responsibility 21 (1):77-99.
    The aim of the study was to explore the effects of the Responsible Care programme and how it is applied in practice. The present research questions include the following focus: how should we assess the performance of an organization's RC activity and what are the different criteria for assessing RC practices? The results indicate that the RC programme provides practical tools for developing health, environmental and safety operations. RC companies are committed to developing their products and processes, and continuously strive (...)
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  31.  22
    Couleurs à la mode. Impressionism as an Effect of the Chemical Industry.Wolf Kittler - 2015 - Zeitschrift für Medien- Und Kulturforschung 2015 (1):159-184.
    The invention of aniline and other synthetic dyes in the second half of the nineteenth century is the beginning of a new epoch. The new colors produced by the fledgling chemical industry are not only brighter than most of the traditional dyestuffs, but also much cheaper. They change the appearance of women on the streets of the modern city. Among the first media to notice and document this revolution are fashion magazines, realist novels, and Impressionist paintings. I argue that the (...)
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  32.  31
    Chemical substance, material, product, goods, waste: a changing ontology.Luigi Cerruti & Elena Ghibaudi - 2017 - Foundations of Chemistry 19 (2):97-123.
    A chemical substance is instantiated in the material world by a number of quantities of such substance, placed in different locations. A change of location implies a change in the net of relationships entertained by the QCS with the region wherein it is found. This fact entails changes of the ontological status of the CS, as this is not fully determined by the inherent features of the CS and includes a relevant relational contribution. In order to demonstrate this thesis, we (...)
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  33.  4
    The Earliest Chemical Industry. An Essay in the Historical Relations of Economics & Technology Illustrated from the Alum Trade by Charles Singer. [REVIEW]George Sarton - 1950 - Isis 41:128-131.
  34.  7
    Industrial Teesside, Lives and Legacies: A post-industrial geography.Jonathan Warren - 2018 - Cham: Imprint: Palgrave Macmillan.
    This book evaluates the consequences of economic, social, environmental and cultural change on people living and working within Teesside in the North-East of England. It assesses the lived experiences, working lives, health and cultural perspectives of residents and key stakeholders in the wake of serious de-industralisation in the region. The narrative is embedded within the long-term industrial history of Stockton: an area once dominated by steel, coal and chemical industries. This past still continues to shape its future and influences (...)
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  35.  38
    Why chemical engineering emerged in America instead of germany.Sunny Auyang - manuscript
    PDF version As a scientific productive activity, engineering is closely associated with natural science on the one hand and industry on the other. The emergence of chemical engineering was influenced by the America’s industrial structures and academic institutions. The science-oriented characteristic of chemical engineering in turn impacted the development of industrial structures, especially the rapid rise of a competitive petrochemical industry.
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  36. Milestones in 150 Years of the Chemical Industry.P. J. T. Morris, W. A. Campbell, H. L. Roberts & J. K. Smith - 1994 - Annals of Science 51 (6):680.
  37.  21
    Chemical engineering in England, 1880–1922.J. F. Donnelly - 1988 - Annals of Science 45 (6):555-590.
    The paper surveys the origins of chemical engineering in England in the late nineteenth and early twentieth centuries. It deals particularly with the recognition of the field as an independent discipline, its relations with chemistry and mechanical engineering, and the influence on its growth of industrial ‘demand’. The position of chemical engineering in public discourse, in the City and Guilds Central Institution, and at Imperial College of Science and Technology and University College London are discussed, together with the creation (...)
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  38.  11
    To Test or Not to Test: Tools, Rules, and Corporate Data in US Chemicals Regulation.Angela N. H. Creager - 2021 - Science, Technology, and Human Values 46 (5):975-997.
    When the Toxic Substances Control Act was passed by the US Congress in 1976, its advocates pointed to new generation of genotoxicity tests as a way to systematically screen chemicals for carcinogenicity. However, in the end, TSCA did not require any new testing of commercial chemicals, including these rapid laboratory screens. In addition, although the Environmental Protection Agency was to make public data about the health effects of industrial chemicals, companies routinely used the agency’s obligation to (...)
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  39.  4
    Industrial Perspective: Photographs of the Gulf Coast.Andrew Borowiec - 2005 - Center for American Places.
    The world of factories and industry is a crucial yet oft-forgotten fact that undergirds the bustling prosperity of contemporary American life. Photographer Andrew Borowiec has spent his career exploring the industrial fields of middle America, and he now turns his camera's eye southward in Industrial Perspective, exploring the panoramic landscapes along and near the Gulf of Mexico where oil and gas industry workers live and work. Borowiec gained permission from oil corporations to enter their high-security sites and was (...)
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  40.  13
    book review: Esther Leslie: "Synthetic Worlds: Nature, Art and the Chemical Industry". [REVIEW]Sophia Efstathiou - 2010 - Hyle 16 (2):126 - 129.
  41.  15
    Perceptions of the Engineers’ “Professionalism” in the Chemical Industry.Barry D. Lichter & Michael P. Hodges - 1983 - Business and Professional Ethics Journal 2 (2):1-8.
  42.  5
    Couleurs à la mode. Impressionism as an Effect of the Chemical Industry.Wolf Kittler - 2015 - Zeitschrift für Medien- Und Kulturforschung 6 (1):159-184.
    The invention of aniline and other synthetic dyes in the second half of the nineteenth century is the beginning of a new epoch.
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  43.  33
    Dynamic Early Warning Method for Major Hazard Installation Systems in Chemical Industrial Park.Yaguang Kong, Chenfeng Xie, Song Zheng, Peng Jiang, Meng Guan & Fang Wang - 2019 - Complexity 2019:1-18.
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  44.  62
    Including public perspectives in industrial biotechnology and the biobased economy.Lino Paula & Frans Birrer - 2006 - Journal of Agricultural and Environmental Ethics 19 (3):253-267.
    Industrial (“white”) biotechnology promises to contribute to a more sustainable future. Compared to current production processes, cases have been identified where industrial biotechnology can decrease the amount of energy and raw materials used to make products and also reduce the amount of emissions and waste produced during production. However, switching from products based on chemical production processes and fossil fuels towards “biobased” products is at present not necessarily economically viable. This is especially true for bulk products, for example (...)
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  45.  33
    Of theory shifts and industrial innovations: The relations of J. A. C. Chaptal and A. L. Lavoisier.Carleton E. Perrin - 1986 - Annals of Science 43 (6):511-542.
    Relations between J. A. C. Chaptal, pioneer of heavy chemical industry in France, and A. L. Lavoisier, reformer of chemical theory, are examined in the light of unpublished correspondence they exchanged in the period 1784–1790. The letters, together with Chaptal's early publications, allow a reconstruction of his conversion to Lavoisier's antiphlogistic chemistry. They also reveal a series of petitions that Chaptal made to Lavoisier, in the latter's official capacity as a director of the Régie des poudres et salpêtres, for relief (...)
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  46.  15
    Local impacts, global sources: The governance of boundary-crossing chemicals.Hugh S. Gorman, Valoree S. Gagnon & Emma S. Norman - 2016 - History of Science 54 (4):443-459.
    Over the last half century, a multijurisdictional, multiscale system of governance has emerged to address concerns associated with toxic chemicals that have the capacity to bioaccumulate in organisms and biomagnify in food chains, leading to fish consumption advisories. Components of this system of governance include international conventions, laws enacted by nation states and their subjurisdictions, and efforts to adaptively manage regional ecosystems. Given that many of these compounds – including mercury, industrial chemicals such as polychlorinated biphenyls, and (...)
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  47.  28
    Early Industrial Roots of Green Chemistry and the history of the BHC Ibuprofen process invention and its Quality connection.Mark A. Murphy - 2017 - Foundations of Chemistry 20 (2):121-165.
    Conventional wisdom and many published histories of “Green Chemistry” describe its start as being a result of governmental and/or regulatory actions at the US Environmental Protection Agency during the early 1990’s. But there were many Real World industrial examples of environmentally friendly commercial processes in the oil and commodity chemicals industries for decades prior to the 1990s. Some early examples of commercial “Green Chemistry” are briefly described in this article. The Boots/Hoechst Celanese Ibuprofen process was one of the (...)
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  48.  3
    Alfred D. Chandler, Jr. Shaping the Industrial Century: The Remarkable Story of the Evolution of the Modern Chemical and Pharmaceutical Industries. viii + 366 pp., tables, index. Cambridge, Mass.: Harvard University Press, 2005. $29.95. [REVIEW]Geoffrey Tweedale - 2006 - Isis 97 (2):377-378.
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  49.  29
    The U.S. Radium Industry: Industrial In-house Research and the Commercialization of Science. [REVIEW]Maria Rentetzi - 2008 - Minerva 46 (4):437-462.
    A fierce debate ensued after the announcement in 1913 in the U.S.A. that all rights and ownership of radium-bearing ores found on public land would be reserved by the government. At stake was the State monopolization of radium that pitted powerful industrialists with radium claims, mainly in the Colorado area, against the Bureau of Mines and prestigious physicians who wished to reserve radium for medical uses. This article describes the strategies of one of the biggest U.S. radium industries that dominated (...)
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  50.  13
    Opting for Oil: The Political Economy of Technological Change in the West German Chemical Industry, 1945-1961. Raymond G. Stokes. [REVIEW]Geoffrey C. Bowker - 1996 - Isis 87 (2):392-393.
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